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连接液泡膜和质膜转运网络。

Connecting vacuolar and plasma membrane transport networks.

作者信息

Cubero-Font Paloma, De Angeli Alexis

机构信息

BPMP, Université de Montpellier, CNRS, INRAE, Montpellier SupAgro, Montpellier, 34060, France.

出版信息

New Phytol. 2021 Jan;229(2):755-762. doi: 10.1111/nph.16983. Epub 2020 Nov 11.

Abstract

The coordinated control of ion transport across the two major membranes of differentiated plant cells, the plasma and the vacuolar membranes, is fundamental in cell physiology. The stomata responses to the fluctuating environmental conditions are an illustrative example. Indeed, they rely on the coordination of ion fluxes between the different cell compartments. The cytosolic environment, which is an interface between intracellular compartments, and the activity of the ion transporters localised in the different membranes influence one each other. Here we analyse the molecular mechanisms connecting and modulating the transport processes at both the plasma and the vacuolar membranes of guard cells.

摘要

跨分化植物细胞的两个主要膜(质膜和液泡膜)的离子运输的协调控制,是细胞生理学的基础。气孔对波动环境条件的响应就是一个典型例子。实际上,它们依赖于不同细胞区室之间离子通量的协调。作为细胞内区室之间界面的胞质溶胶环境,以及位于不同膜上的离子转运蛋白的活性相互影响。在这里,我们分析连接和调节保卫细胞质膜和液泡膜上运输过程的分子机制。

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